化学
转移加氢
钌
齿合度
催化作用
配体(生物化学)
咪唑
药物化学
单晶
光化学
晶体结构
立体化学
结晶学
有机化学
生物化学
受体
作者
Alberto Gobbo,Xinyuan Ma,Gianluca Ciancaleoni,Stefano Zacchini,Lorenzo Biancalana,Massimo Guelfi,Guido Pampaloni,Steven P. Nolan,Fabio Marchetti
标识
DOI:10.1002/ejic.202300078
摘要
Abstract While ruthenium(II) arene complexes have been widely investigated for their potential in catalytic transfer hydrogenation, studies on homologous compounds replacing the arene ligand with the six‐electron donor tris(1‐pyrazolyl)methane (tpm) are almost absent in the literature. The reactions of [RuCl(κ 3 ‐tpm)(PPh 3 ) 2 ]Cl, 1 , with a series of nitrogen ligands (L) proceeded with selective PPh 3 mono‐substitution, affording the novel complexes [RuCl(κ 3 ‐tpm)(PPh 3 )(L)]Cl (L=NCMe, 2 ; NCPh, 3 ; imidazole, 4 ) in almost quantitative yields. Products 2 – 4 were fully characterized by IR and multinuclear NMR spectroscopy, moreover the molecular structure of 4 was ascertained by single crystal X‐ray diffraction. Compounds 2 – 4 were evaluated as catalytic precursors in the transfer hydrogenation of a series of ketones with isopropanol as the hydrogen source, and 2 exhibited the highest activity. Extensive NMR experiments and DFT calculations allowed to elucidate the mechanism of the transfer hydrogenation process, suggesting the crucial role played by the tpm ligand, reversibly switching from tri‐ to bidentate coordination during the catalytic cycle.
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